首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Mitochondrial genome diversity and population structure of the giant squid Architeuthis: genetics sheds new light on one of the most enigmatic marine species
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Mitochondrial genome diversity and population structure of the giant squid Architeuthis: genetics sheds new light on one of the most enigmatic marine species

机译:巨型鱿鱼线粒体的线粒体基因组多样性和种群结构:遗传学为最神秘的海洋物种之一提供了新的思路

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摘要

Despite its charismatic appeal to both scientists and the general public, remarkably little is known about the giant squid Architeuthis, one of the largest of the invertebrates. Although specimens of Architeuthis are becoming more readily available owing to the advancement of deep-sea fishing techniques, considerable controversy exists with regard to topics as varied as their taxonomy, biology and even behaviour. In this study, we have characterized the mitochondrial genome (mitogenome) diversity of 43 Architeuthis samples collected from across the range of the species, in order to use genetic information to provide new and otherwise difficult to obtain insights into the life of this animal. The results show no detectable phylogenetic structure at the mitochondrial level and, furthermore, that the level of nucleotide diversity is exceptionally low. These observations are consistent with the hypotheses that there is only one global species of giant squid, Architeuthis dux (Steenstrup, 1857), and that it is highly vagile, possibly dispersing through both a drifting paralarval stage and migration of larger individuals. Demographic history analyses of the genetic data suggest that there has been a recent population expansion or selective sweep, which may explain the low level of genetic diversity.
机译:尽管它对科学家和公众都具有魅力,但对巨型鱿鱼Architeuthis(最大的无脊椎动物之一)知之甚少。尽管由于深海捕鱼技术的进步,古猿的标本变得越来越容易获得,但是关于其分类,生物学甚至行为等主题的争议仍然很大。在这项研究中,我们已经表征了从该物种的整个范围收集的43个Architeuthis样品的线粒体基因组(有丝分裂基因组)的多样性,以便利用遗传信息来提供对该动物生活的新发现,而又难以获得洞察。结果表明,在线粒体水平上没有可检测到的系统发育结构,此外,核苷酸多样性水平异常低。这些观察结果与以下假设相一致:大鱿鱼只有一种全球物种,即Architeuthis dux(Steenstrup,1857年),并且其高度易变,可能在飘动的寄生虫阶段和较大个体的迁徙中分散。遗传数据的人口历史分析表明,最近出现了人口膨胀或选择性扫描,这可能解释了遗传多样性水平较低。

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